WO1996005011A1 - Chuck - Google Patents

Chuck Download PDF

Info

Publication number
WO1996005011A1
WO1996005011A1 PCT/US1995/008070 US9508070W WO9605011A1 WO 1996005011 A1 WO1996005011 A1 WO 1996005011A1 US 9508070 W US9508070 W US 9508070W WO 9605011 A1 WO9605011 A1 WO 9605011A1
Authority
WO
WIPO (PCT)
Prior art keywords
nut
chuck
drive shaft
manual
body member
Prior art date
Application number
PCT/US1995/008070
Other languages
English (en)
French (fr)
Inventor
Christopher B. Barton
Steven W. Steading
Original Assignee
Power Tool Holders Incorporated
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Power Tool Holders Incorporated filed Critical Power Tool Holders Incorporated
Priority to GB9702711A priority Critical patent/GB2305377B/en
Priority to EP95927120A priority patent/EP0775033B1/de
Priority to RU97103510A priority patent/RU2132258C1/ru
Priority to JP8507301A priority patent/JPH11500669A/ja
Priority to BR9508558A priority patent/BR9508558A/pt
Priority to MX9701060A priority patent/MX9701060A/es
Priority to DE19581725T priority patent/DE19581725B4/de
Priority to AU31248/95A priority patent/AU3124895A/en
Publication of WO1996005011A1 publication Critical patent/WO1996005011A1/en

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23BTURNING; BORING
    • B23B31/00Chucks; Expansion mandrels; Adaptations thereof for remote control
    • B23B31/02Chucks
    • B23B31/10Chucks characterised by the retaining or gripping devices or their immediate operating means
    • B23B31/12Chucks with simultaneously-acting jaws, whether or not also individually adjustable
    • B23B31/1207Chucks with simultaneously-acting jaws, whether or not also individually adjustable moving obliquely to the axis of the chuck in a plane containing this axis
    • B23B31/1238Jaws movement actuated by a nut with conical screw-thread
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23BTURNING; BORING
    • B23B2222/00Materials of tools or workpieces composed of metals, alloys or metal matrices
    • B23B2222/64Nickel
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23BTURNING; BORING
    • B23B2222/00Materials of tools or workpieces composed of metals, alloys or metal matrices
    • B23B2222/98Zinc
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23BTURNING; BORING
    • B23B2228/00Properties of materials of tools or workpieces, materials of tools or workpieces applied in a specific manner
    • B23B2228/10Coatings
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23BTURNING; BORING
    • B23B2231/00Details of chucks, toolholder shanks or tool shanks
    • B23B2231/38Keyless chucks for hand tools
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23BTURNING; BORING
    • B23B2231/00Details of chucks, toolholder shanks or tool shanks
    • B23B2231/44Nose pieces
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23BTURNING; BORING
    • B23B2260/00Details of constructional elements
    • B23B2260/008Bearings
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S279/00Chucks or sockets
    • Y10S279/902Keyless type socket
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T279/00Chucks or sockets
    • Y10T279/17Socket type
    • Y10T279/17615Obliquely guided reciprocating jaws
    • Y10T279/17623Threaded sleeve and jaw
    • Y10T279/17632Conical sleeve
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T408/00Cutting by use of rotating axially moving tool
    • Y10T408/94Tool-support
    • Y10T408/95Tool-support with tool-retaining means
    • Y10T408/953Clamping jaws

Definitions

  • the present invention relates generally to chucks for use with drills or with electric or pneumatic power drivers. More particularly, the present invention relates to a chuck of the keyless type which may be tightened or loosened by hand or by actuation of the driver motor.
  • twist drills are the most common tools used with such drivers
  • the tools may also comprise screwdrivers, nut drivers, burrs, mounted grinding stones and other cutting or abrading tools. Since the tools may have shanks of varying diameter or the cross-section of the tool shank may be polygonal, the device is usually provided with a chuck which is adjustable over a relatively wide range. The chuck may be attached to the driver by a threaded or tapered bore.
  • chucks have been developed in the art.
  • three jaws spaced circumferentially approximately 120 degrees apart from each other are constrained by angularly disposed passageways in a body attached onto the drive shaft and configured so that rotation of the body in one direction relative to a constrained nut engaging the jaws forces the jaws into gripping relationship with respect to the cylindrical shank of a tool, while rotation in the opposite direction releases the gripping relationship.
  • Such a chuck may be keyless if it is rotated by hand.
  • Yet another object of the present invention is to provide an improved mechanism for maintaining a one-piece nut on the body of a chuck.
  • a chuck for use with a manual or power driver having a rotatable drive shaft, the chuck comprising a generally cylindrical body member having a nose section and a tail section.
  • the tail section has an axial bore formed therein to mate with the drive shaft of the driver, and the nose section has an axial bore formed therein and a plurality of angularly disposed passageways formed therethrough and intersecting the axial bore.
  • the chuck further includes a plurality of jaws slidably positioned in each of the angularly disposed passageways, each of the jaws having a jaw face formed on one side thereof and threads formed on the opposite side thereof.
  • the chuck further includes a nut rotatably mounted on the body and in engagement with the threads of the jaws and a bearing thrust ring fixed on the body member.
  • the chuck further includes a self-contained anti- friction bearing assembly disposed between the nut and the thrust ring and a generally cylindrical front sleeve member in driving engagement with the nut and overlying the nose section of the body member whereby when the front sleeve member is rotated with respect to the body member, the jaws will be moved thereby.
  • a chuck for use with a manual or power driver having a rotatable drive shaft, the chuck comprising a generally cylindrical body member having a nose section and a tail section, the tail section having an axial bore formed therein to mate with the drive shaft of the driver, and the nose section having an axial bore formed therein and a plurality of angularly disposed passageways formed therethrough and intersecting the axial bore.
  • the chuck further includes a plurality of jaws slidably positioned in each of the angularly disposed passageways, each of the jaws having a jaw face formed on one side thereof and threads formed on the opposite side thereof.
  • the chuck further includes a nut rotatably mounted on the body and in engagement with the threads on the jaws, and a generally cylindrical front sleeve member overlying the nose section of the body member and in driving engagement with the nut.
  • the chuck further includes a rust-resistant nosepiece adapted to be secured to the nose section of the body, the nosepiece maintaining the front sleeve member in driving engagement with the nut, whereby when said front sleeve member is rotated with respect to the body member, the jaws will be moved thereby.
  • the tail section is adapted to mate with the drive shaft of the driver and the nose section having an axial bore formed therein and a plurality of angularly disposed passageways formed therethrough and intersecting said axial bore.
  • the chuck further includes a plurality of jaws slidably positioned in the angularly disposed passageways, each of the jaws having a jaw face formed on one side thereof.
  • the chuck further including a nut rotatably mounted on the body member and in engagement with the threads on the jaws.
  • the chuck further includes a nut retainer member received on the body for maintaining the nut on the body, the nut retainer member including a frusto-conical portion.
  • the chuck further includes a generally cylindrical front sleeve member in driving engagement with the nut and overlying the nose section of the body member whereby when the front sleeve member is rotated with respect to the body member, the jaws will be moved thereby.
  • the nut retainer member further includes a cylindrical portion which is press fitted onto the body member.
  • Figure 1 is a longitudinal view, partly in section, of a chuck in accordance with an embodiment of the present invention
  • Figure 2 is an exploded view of the chuck illustrated in Figure 1;
  • Figure 3 is a longitudinal view, partly in cross-section of another embodiment in accordance with the present invention.
  • Figure 4 is an exploded view of the chuck illustrated in Figure 3.
  • Chuck 10 includes a front sleeve member 12, an optional rear sleeve member 14, a body member 16 and jaws 18.
  • Body member 16 is generally cylindrical in shape and comprises a nose or forward section 20 and a tail or rearward section 22.
  • An axial bore 24 is formed in the nose section 20 of the body member 16.
  • Axial bore 24 is somewhat larger than the largest tool shank that the chuck is designed to accommodate.
  • a threaded bore 26 is formed in tail section 22 of body 16 and is of a standard size to mate with the drive shaft of a powered or hand driver (not shown) .
  • the bores 24, 26 may communicate at the central region 28 of body member 16. While a threaded bore 26 is illustrated, such bore could be replaced with a tapered bore of a standard size to mate with a tapered drive shaft.
  • Passageways 30 are formed in body member 16 to accommodate each jaw 18.
  • each jaw 18 is separated from the adjacent jaw by an arc of approximately 120 degrees.
  • the axes of the passageways 30 and the jaws 18 are angled with respect to the chuck axis but intersect the chuck axis at a common point ahead of the chuck body 16.
  • Each jaw 18 has a tool engaging face 32 which is generally parallel to the axis of the chuck body 16 and threads 34 on its opposite or outer surface. Threads 34 of any suitable type and pitch may be utilized within the scope of the present invention as would be readily apparent to one skilled in the art.
  • body member 16 includes a thrust ring member 36 which, in a preferred embodiment, is integral therewith.
  • Thrust ring member 36 includes a thrust face 38.
  • Thrust face 38 includes an arcuate seating surface 40 for engagement with the inner race of a self- contained anti-friction bearing assembly 42 as will be described in more detail below.
  • Thrust ring member 36 includes a plurality of jaw guideways 30 formed around the circumference to permit retraction of the jaws 18 therethrough.
  • Body member 16 includes a rear cylindrical portion 44 with a knurled surface 46 thereon for receipt of optional rear sleeve 14 to be pressed thereon if so desired.
  • Body 16 further includes a first tapered portion 48 extending from rear cylindrical portion 44 to thrust ring 36.
  • a second tapered portion 50 extends from the area of thrust face 38 to a front cylindrical portion 52.
  • Front cylindrical portion 52 is of greater diameter than the smaller end of second tapered portion 50 and forms a first circumferential groove 54 intermediate the nose and tail sections 20 and 22 of body 16.
  • Body 16 further includes a reduced diameter nose portion 56 that is adapted to receive a nosepiece 58 as will be described in more detail below.
  • the present invention further includes a nut 60 which, in a preferred embodiment, is a split nut and which includes threads 62 for mating with threads 34 on jaws 18 whereby when said nut is rotated with respect to said body, said jaws will be advanced or retracted.
  • Nut 60 is adapted to receive a retaining band 64 for maintaining nut 60 together after it is assembled.
  • a split nut is utilized because of the diameter of front cylindrical portion 52.
  • Nut 60 includes drive slots 66 for mating with drive ribs 68 on front sleeve 12 so that when front sleeve 12 is rotated, nut 60 will rotate therewith and move jaws 18 as set forth above.
  • a self-contained bearing assembly 42 is adapted to be placed between thrust ring 36 and a face 70 of nut 60.
  • Self-contained bearing assembly 42 includes an inner race 72, an outer race 74 and bearing elements 76 maintained therebetween.
  • bearing elements 76 are ball bearings.
  • Self-contained bearing assembly 42 may further include a shroud 78 surrounding the inner and outer races 72, 74 for maintaining the bearing assembly as a self-contained component.
  • Inner race 72 includes an arcuate surface that is dimensioned and configured to mate with arcuate seating surface 40 on thrust face 38 of thrust ring 36. Such mating relationship assists in alignment and minimization of both axial and radial stresses when the chuck is operated.
  • self-contained bearing assembly 42 is a radial thrust bearing.
  • Assembly is greatly simplified in that individual ball bearings and cages do not have to be handled.
  • body and nut are not required to be as hard or dense as is necessary with conventional bearing systems where the body or nut may also serve as a thrust race, thus allowing more flexibility in materials and reducing secondary manufacturing operations and, ultimately, cost.
  • Front sleeve member 12 is adapted to be loosely fitted over nose section 20 of chuck 10.
  • Drive ribs 68 of front sleeve 12 engage drive slots 66 of nut 60 so that front sleeve 12 and nut 60 will be operatively connected, i.e., when front sleeve 12 is rotated, nut 60 will rotate therewith.
  • Front sleeve 12 includes an annular ledge portion 79 adapted to rest at the inner face of front cylindrical portion 52 and nose portion 56.
  • Nosepiece 58 is dimensioned and adapted to be pressed onto nose portion 56 to maintain front sleeve 12 on chuck 10. It should be appreciated that nosepiece 58 could also be secured by snap fit, threading or the like.
  • Nosepiece 58 is exposed when said chuck is assembled and is preferably coated with a non-ferrous metallic coating to prevent rust and to enhance its appearance.
  • a non-ferrous metallic coating may be zinc or nickel, however, it should be appreciated that any suitable coating could be utilized.
  • Nosepiece 58 serves to maintain front sleeve member 12 in position on chuck 10 and in driving engagement with nut 60.
  • nosepiece 58 serves the dual purpose of providing an aesthetically pleasing cover for nose portion 56 that inhibits rust. This provides the advantage of an aesthetically pleasing appearance without the necessity to coat the entire body member 16 with a non-ferrous material. If desired, the rear sleeve member 14 may be omitted and the front sleeve member 12 extended to the tail end of body 16.
  • the circumferential surface of the front sleeve member 12 may be knurled or may be provided with longitudinal ribs or other protrusions to enable the operator to grip it securely.
  • the circumferential surface of the rear sleeve member 14, if employed, may be knurled or ribbed if desired.
  • the front and rear sleeves may be fabricated from a structural plastic such as polycarbonate, a filled polypropylene, for example, glass filled polypropylene, or a blend of structural plastic materials. Other composite materials such as, for example, graphite filled polymerics would also be suitable in certain environments.
  • the materials from which the chuck of the present invention is fabricated will depend on the end use of the chuck, and the above are provided by way of example only. It will be appreciated that rear sleeve member
  • Chuck 110 in accordance with another embodiment of the present invention is illustrated.
  • Chuck 110 includes a front sleeve member 112, an optional rear sleeve member 114, a body member 116 and jaws 118.
  • Body member 116 is generally cylindrical in shape and comprises a nose or forward section 120 and a tail or rearward section 122.
  • An axial bore 124 is formed in the nose section 120 of the body member 116.
  • Axial bore 124 is somewhat larger than the largest tool shank that the chuck is designed to accommodate.
  • a threaded bore 126 is formed in tail section 122 of body 116 and is of a standard size to mate with the drive shaft of a powered or hand driver (not shown). The bores 124, 126 may communicate at the central region 128 of body member 116. While a threaded bore 126 is illustrated, such bore could be replaced with a tapered bore of a standard size to mate with a tapered drive shaft.
  • Passageways 130 are formed in body member 116 to accommodate each jaw 118.
  • three jaws 118 are employed and each jaw 118 is separated from the adjacent jaw by an arc of approximately 120 degrees.
  • the axes of the passageways 130 and the jaws 118 are angled with respect to the chuck axis but intersect the chuck axis at a common point ahead of the chuck body 116.
  • Each jaw 118 has a tool engaging face 132 which is generally parallel to the axis of the chuck body 116 and threads 134 on its opposite or outer surface. Threads 134 of any suitable type and pitch may be utilized within the scope of the present invention as would be readily apparent to one skilled in the art.
  • body member 116 includes a thrust ring member 136 which, in a preferred embodiment, is integral therewith.
  • Thrust ring member 136 includes a plurality of jaw guideways 150 formed around the circumference to permit retraction of the jaws 118 therethrough.
  • Thrust ring member 136 may have an arcuate seating surface for receipt of a self-contained bearing assembly as described in the above embodiment.
  • Body member 116 includes a rear cylindrical portion 144 with a knurled surface 146 thereon for receipt of optional rear sleeve 114 to be pressed thereon if so desired.
  • the present invention further includes a nut 160 which, in a preferred embodiment, is a unitary nut and which includes threads 162 for mating with threads 134 on jaws 118 whereby when said nut is rotated with respect to said body, said jaws will be advanced or retracted.
  • nut 160 includes drive slots 166 for mating with drive ribs 168 on front sleeve 112 so that when front sleeve 112 is rotated, nut 160 will rotate therewith and move jaws 118 as set forth above.
  • a self-contained bearing assembly 142 is adapted to be placed between thrust ring 136 and a face 170 of nut 160.
  • Self-contained bearing assembly 142 includes an inner race 172, an outer race 174 and bearing elements 176 maintained therebetween.
  • bearing elements 176 are ball bearings.
  • Self-contained bearing assembly 142 may further include a shroud 178 surrounding the inner and outer races 172, 174 for maintaining the bearing assembly as a self- contained component.
  • Inner race 172 may include an arcuate surface that is dimensioned and configured to mate with an arcuate seating surface on the thrust face of thrust ring 136 such as illustrated in the previous embodiment, if so desired.
  • self-contained bearing assembly 142 is a radial thrust bearing. It should be appreciated that any type bearing arrangement including plain bearing surfaces could be utilized in the present invention.
  • Nut retainer member 143 includes a first generally cylindrical portion 145 and a second frusto-conical portion 147. Substantially cylindrical portion 145 is configured to be press fitted over nose or forward section 120 in a location so that a portion 149 will engage nut 160 to prevent nut 160 from moving axially forward more than a desired amount.
  • nut retainer member 143 is adapted to be press fitted onto the nose portion of the body, but could be secured in any other suitable manner in accordance with the present invention.
  • Nut member 160 defines a ledge 151 and nut retainer member 143, through its portion 149, is adapted to be received on ledge 151 when contact is made between nut 160 and nut retainer member 143.
  • Front sleeve member 112 is adapted to be loosely fitted over nose section 120 of chuck 110.
  • Drive ribs 168 of front sleeve 112 engage drive slots 166 of nut 160 so that front sleeve 112 and nut 160 will be operatively rotationally connected, i.e., when front sleeve 112 is rotated, nut 160 will rotate therewith.
  • a nosepiece 158 is dimensioned and adapted to be pressed onto the front of the forward section 120 of body member 116 to maintain front sleeve 112 on chuck 110. It should be appreciated that nosepiece 158 could also be secured by snap fit, threading or the like.
  • Nosepiece 158 is exposed when the chuck is assembled and is preferably coated with a non- ferrous metallic coating to prevent rust and to enhance its appearance.
  • a non- ferrous metallic coating may be zinc or nickel, however, it should be appreciated that any suitable coating could be utilized.
  • Nosepiece 158 serves to maintain front sleeve member 112 in position on chuck 110 and in driving engagement with nut 160.
  • nosepiece 158 serves the dual purpose of providing an aesthetically pleasing cover for nose portion 156 that inhibits rust. This provides the advantage of an aesthetically pleasing appearance without the necessity to coat the entire body member 116 with a non-ferrous material.
  • the rear sleeve member 114 may be omitted and the front sleeve member 112 extended to the tail end of body 116.
  • a spindle lock or the like is provided on the driver or when the driver is used to tighten or loosen the jaws.
  • a snap ring or any other mechanism could be utilized to maintain front sleeve 112 in place in lieu of nosepiece 158.
  • the circumferential surface of the front sleeve member 112 may be knurled or may be provided with longitudinal ribs or other protrusions to enable the operator to grip it securely.
  • the circumferential surface of the rear sleeve member 114 if employed, may be knurled or ribbed if desired.
  • the front and rear sleeves may be fabricated from a structural plastic such as polycarbonate, a filled polypropylene, for example, glass filled polypropylene, or a blend of structural plastic materials. Other composite materials such as, for example, graphite filled polymerics would also be suitable in certain environments.
  • the materials from which the chuck of the present invention is fabricated will depend on the end use of the chuck, and the above are provided by way of example only.
  • rear sleeve member 114 is fixed to body member 116 while front sleeve member 112 is operatively associated with nut 160 and secured to body member 116 for relative rotation therewith. Relative movement of the front and rear sleeve members, 112 and 114, due to the interaction between threads 134 on jaws 118 and threads 162 on nut 160 causes jaws 118 to be advanced or retracted, depending upon the direction of relative movement. While the above description is set forth with respect to a keyless chuck, it should be appreciated that the principles of the present invention may be equally applicable to a keyed chuck, and such is within the scope of the present invention.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Gripping On Spindles (AREA)
  • Hand Tools For Fitting Together And Separating, Or Other Hand Tools (AREA)
  • Mechanical Pencils And Projecting And Retracting Systems Therefor, And Multi-System Writing Instruments (AREA)
PCT/US1995/008070 1994-08-12 1995-06-26 Chuck WO1996005011A1 (en)

Priority Applications (8)

Application Number Priority Date Filing Date Title
GB9702711A GB2305377B (en) 1994-08-12 1995-06-26 Chuck
EP95927120A EP0775033B1 (de) 1994-08-12 1995-06-26 Spannfutter
RU97103510A RU2132258C1 (ru) 1994-08-12 1995-06-26 Патрон
JP8507301A JPH11500669A (ja) 1994-08-12 1995-06-26 チャック
BR9508558A BR9508558A (pt) 1994-08-12 1995-06-26 Mandril para ser usado com um acionador mecánico ou manual e elemento de retenção de forca para manter um porca de atuação de garra no lugar sobre um mandril
MX9701060A MX9701060A (es) 1994-08-12 1995-06-26 Mandril para uso con un accionador manual o motorizado.
DE19581725T DE19581725B4 (de) 1994-08-12 1995-06-26 Spannfutter
AU31248/95A AU3124895A (en) 1994-08-12 1995-06-26 Chuck

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US08/289,922 1994-08-12
US08/289,922 US5501473A (en) 1993-08-13 1994-08-12 Chuck

Publications (1)

Publication Number Publication Date
WO1996005011A1 true WO1996005011A1 (en) 1996-02-22

Family

ID=23113753

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/US1995/008070 WO1996005011A1 (en) 1994-08-12 1995-06-26 Chuck

Country Status (13)

Country Link
US (9) US5501473A (de)
EP (1) EP0775033B1 (de)
JP (1) JPH11500669A (de)
CN (1) CN1134679A (de)
AU (1) AU3124895A (de)
BR (1) BR9508558A (de)
CA (1) CA2197202A1 (de)
CH (1) CH691040A5 (de)
DE (1) DE19581725B4 (de)
GB (1) GB2305377B (de)
MX (1) MX9701060A (de)
RU (1) RU2132258C1 (de)
WO (1) WO1996005011A1 (de)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1025940A4 (de) * 1997-03-12 2000-08-09 Shandong Weida Machine Tool To Handbetätigtes futter

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US5501473A (en) * 1993-08-13 1996-03-26 Power Tool Holders Incorporated Chuck
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US5816583A (en) * 1996-12-04 1998-10-06 Power Tool Holders, Inc. Integral locking sleeve chuck
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US6017039A (en) * 1997-11-03 2000-01-25 Power Tool Holders Incorporated Nosepiece nut retainer chuck
USD404988S (en) * 1997-11-26 1999-02-02 Power Tool Holders, Incorporated Chuck
US6168170B1 (en) * 1998-01-30 2001-01-02 Power Tool Holders Incorporated Chuck with jaw blade rotational stop
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US6102411A (en) * 1998-08-14 2000-08-15 Power Tool Holders, Inc. Chuck with locking sleeve
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USD433909S (en) * 1999-12-23 2000-11-21 Ryobi North America, Inc. Keyless drill chuck
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US7000926B1 (en) * 2004-10-29 2006-02-21 Zhe Jiang San Ou Machinery Co.Ltd Manually tightened drill chuck
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US7478979B2 (en) * 2005-04-27 2009-01-20 Eastway Fair Company Limited Rotatable chuck
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CN1134679A (zh) 1996-10-30
US20020074745A1 (en) 2002-06-20
AU3124895A (en) 1996-03-07
US6068266A (en) 2000-05-30
EP0775033B1 (de) 2001-02-21
GB2305377B (en) 1998-07-22
CH691040A5 (de) 2001-04-12
US20040188958A1 (en) 2004-09-30
US6536781B2 (en) 2003-03-25
US20060119051A1 (en) 2006-06-08
DE19581725T1 (de) 1997-07-24
US7452168B2 (en) 2008-11-18
EP0775033A1 (de) 1997-05-28
GB9702711D0 (en) 1997-04-02
US6367815B2 (en) 2002-04-09
US6279918B1 (en) 2001-08-28
US20010045714A1 (en) 2001-11-29
US5501473A (en) 1996-03-26
US7018146B2 (en) 2006-03-28
JPH11500669A (ja) 1999-01-19
US20030111803A1 (en) 2003-06-19
DE19581725B4 (de) 2010-09-09
US5709392A (en) 1998-01-20
BR9508558A (pt) 1997-11-11
CA2197202A1 (en) 1996-02-22
US6736410B2 (en) 2004-05-18
RU2132258C1 (ru) 1999-06-27
GB2305377A (en) 1997-04-09

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